首页> 外文期刊>Medical and Biological Engineering and Computing: Journal of the International Federation for Medical and Biological Engineering >Mechanical and microarchitectural analyses of cancellous bone through experiment and computer simulation.
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Mechanical and microarchitectural analyses of cancellous bone through experiment and computer simulation.

机译:通过实验和计算机仿真对松质骨进行机械和微结构分析。

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摘要

The relationship between microarchitecture to the failure mechanism and mechanical properties can be assessed through experimental and computational methods. In this study, both methods were utilised using bovine cadavers. Twenty four samples of cancellous bone were extracted from fresh bovine and the samples were cleaned from excessive marrow. Uniaxial compression testing was performed with displacement control. After mechanical testing, each specimen was ashed in a furnace. Four of the samples were exemplarily scanned using micro-computed tomography (muCT) and three dimensional models of the cancellous bones were reconstructed for finite element simulation. The mechanical properties and the failure modes obtained from numerical simulations were then compared to the experiments. Correlations between microarchitectural parameters to the mechanical properties and failure modes were then made. The Young's modulus correlates well with the bone volume fraction with R(2) = 0.615 and P value 0.013. Three different types of failure modes of cancellous bone were observed: oblique fracture (21.7%), perpendicular global fracture (47.8%), and scattered localised fracture (30.4%). However, no correlations were found between the failure modes to the morphological parameters. The percentage of error between computer predictions and the actual experimental test was from 6 to 12%. These mechanical properties and information on failure modes can be used for the development of synthetic cancellous bone.
机译:可以通过实验和计算方法来评估微体系结构与破坏机理和力学性能之间的关系。在这项研究中,两种方法都使用牛尸体。从新鲜牛中提取了二十四个松质骨样品,并从多余的骨髓中清除了样品。通过位移控制进行单轴压缩测试。机械测试后,将每个样品放在炉中灰化。使用微计算机断层扫描(muCT)示例性地扫描了四个样本,并重建了松质骨的三维模型以进行有限元模拟。然后将数值模拟获得的力学性能和破坏模式与实验进行比较。然后建立了微结构参数与力学性能和破坏模式之间的关系。杨氏模量与骨体积分数具有很好的相关性,R(2)= 0.615,P值为0.013。观察到了三种不同类型的松质骨破坏模式:倾斜骨折(21.7%),垂直整体骨折(47.8%)和分散局部骨折(30.4%)。但是,没有发现破坏模式与形态参数之间的相关性。计算机预测与实际实验测试之间的错误百分比为6%至12%。这些机械性能和有关失效模式的信息可用于合成松质骨的发育。

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